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线性和 V 型咔唑取代吡啶-3,5-二腈的合成,表现出高效双极电荷输运和 E 型荧光。

Synthesis of Linear and V-Shaped Carbazolyl-Substituted Pyridine-3,5-dicarbonitriles Exhibiting Efficient Bipolar Charge Transport and E-Type Fluorescence.

机构信息

Latvian Institute of Organic Synthesis, Aizkraukles 21, LV-1006, Riga, Latvia.

Department of Polymer Chemistry and Technology, Kaunas University of Technology, Radvilenu pl. 19, LT-50254, Kaunas, Lithuania.

出版信息

Chemistry. 2019 Mar 1;25(13):3325-3336. doi: 10.1002/chem.201805323. Epub 2019 Feb 4.

DOI:10.1002/chem.201805323
PMID:30536688
Abstract

With the aim of developing all-organic bipolar semiconductors with high charge mobility and efficient E-type fluorescence (so-called TADF) as environmentally friendly light-emitting materials for optoelectronic applications, four noble metals-free dyes with linear and V-shapes were designed using accepting pyridine-3,5-dicarbonitrile and donating carbazole units. By exploiting a donor-acceptor design strategy and using moieties with different donating and accepting abilities, TADF emitters with a wide variety of molecular weights were synthesized to achieve the optimum combination of charge-transporting and fluorescent properties in one TADF molecule. Depending on molecule structures, different TADF emitters capable of emitting in the range from 453 to 550 nm with photoluminescence quantum yields up to 98 % for the solutions in oxygen-free toluene were obtained. All compounds showed bipolar charge-transport. Hole mobility of 2.8×10  cm /Vs at 7×10  V cm was observed for the compound containing two di-tert-butyl-substituted carbazole moieties. The compounds were tested in both non-doped and doped organic light-emitting diodes using different hosts. It was shown that the developed TADF emitters are suitable for different color devices with electroluminescence ranging from blue to yellow and with brightness, maximum current and external quantum efficiencies exceeding 10 000 cd m , 15 cd/A, and 7 %, respectively.

摘要

为了开发具有高电荷迁移率和高效 E 型荧光(所谓的 TADF)的全有机双极半导体,作为用于光电应用的环保发光材料,设计了四个具有线性和 V 形的无贵金属染料,使用的是受电子吡啶-3,5-二氰基和供电子咔唑单元。通过采用给体-受体设计策略,并使用具有不同给体和受体能力的部分,合成了具有各种分子量的 TADF 发射器,以在一个 TADF 分子中实现电荷传输和荧光性能的最佳组合。根据分子结构的不同,获得了不同的 TADF 发射器,它们能够在 453 到 550nm 的范围内发射,在无氧甲苯溶液中的光致发光量子产率高达 98%。所有化合物均表现出双极电荷传输性能。对于含有两个叔丁基取代的咔唑部分的化合物,观察到 7×10 V cm 时的空穴迁移率为 2.8×10 cm /Vs。在使用不同主体的非掺杂和掺杂有机发光二极管中对这些化合物进行了测试。结果表明,所开发的 TADF 发射器适用于不同颜色的器件,其电致发光从蓝色到黄色,亮度、最大电流和外量子效率分别超过 10 000 cd/m 、15 cd/A 和 7%。

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